Protein disulfides can adopt a wide variety of conformations, each having different energies. Limited experimental data suggest that disulfides adopting a high energy have an enhanced likelihood for reduction, but the exact nature of this relation is not clear. Using a computational approach, we give insight on the conformational dependence of the redox behavior of the disulfide bond, which relates structure to reactivity. The relative energy of different conformations of the diethyl disulfide model system correlates with the disulfide/thiol redox potential E°. Insight in the calculated redox potentials is obtained via quantitative molecular orbital theory, and via the decomposition of E° into a vertical electron affinity and a subsequent r...
Disulfide bonds play a key role in stabilizing protein structures, with disruption strongly associat...
Disulfide bonds formed by the oxidation of cysteine residues in proteins are the major form of intra...
Disulfide bridges are no longer considered to merely stabilize protein structure, but are increasing...
Protein disulfides can adopt a wide variety of conformations, each having different energies. Limite...
<div><p>Protein disulfides can adopt a wide variety of conformations, each having different energies...
Disulfide bonds formed by the oxidation of cysteine residues in proteins are the major form of intra...
Disulfide torsional energy, a good predictor of disulfide redox potential in proteins, may be estima...
Disulfide torsional energy, a good predictor of disulfide redox potential in proteins, may be estima...
Disulfide torsional energy, a good predictor of disulfide redox potential in proteins, may be estima...
Disulfides are conventionally viewed as structurally stabilizing elements in proteins but emerging e...
ctr itio pou der iab rem, w disulfides bridges are crucial for maintaining a protein fold, by lo-cal...
<div><p>Disulfide bridges are no longer considered to merely stabilize protein structure, but are in...
Thiol/disulfide exchange in proteins is a vital process in all organisms. To ensure specificity, the...
Redox-active disulfides are capable of being oxidized and reduced under physiological conditions. Th...
Disulfide bridges are no longer considered to merely stabilize protein structure, but are increasing...
Disulfide bonds play a key role in stabilizing protein structures, with disruption strongly associat...
Disulfide bonds formed by the oxidation of cysteine residues in proteins are the major form of intra...
Disulfide bridges are no longer considered to merely stabilize protein structure, but are increasing...
Protein disulfides can adopt a wide variety of conformations, each having different energies. Limite...
<div><p>Protein disulfides can adopt a wide variety of conformations, each having different energies...
Disulfide bonds formed by the oxidation of cysteine residues in proteins are the major form of intra...
Disulfide torsional energy, a good predictor of disulfide redox potential in proteins, may be estima...
Disulfide torsional energy, a good predictor of disulfide redox potential in proteins, may be estima...
Disulfide torsional energy, a good predictor of disulfide redox potential in proteins, may be estima...
Disulfides are conventionally viewed as structurally stabilizing elements in proteins but emerging e...
ctr itio pou der iab rem, w disulfides bridges are crucial for maintaining a protein fold, by lo-cal...
<div><p>Disulfide bridges are no longer considered to merely stabilize protein structure, but are in...
Thiol/disulfide exchange in proteins is a vital process in all organisms. To ensure specificity, the...
Redox-active disulfides are capable of being oxidized and reduced under physiological conditions. Th...
Disulfide bridges are no longer considered to merely stabilize protein structure, but are increasing...
Disulfide bonds play a key role in stabilizing protein structures, with disruption strongly associat...
Disulfide bonds formed by the oxidation of cysteine residues in proteins are the major form of intra...
Disulfide bridges are no longer considered to merely stabilize protein structure, but are increasing...